Finite-time active fuzzy sliding mode approach for deep surge control in nonlinear disturbed compressor system with uncertainty in charactrisitic curve

In this paper, a novel active control approach is designed for surge instability in the compressor system using the finite-time fuzzy sliding mode scheme. The primary novelty of this study lies in the development of a finite-time fuzzy sliding mode control for the surge instability in a compressor s...

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Autores principales: Xiuwei Fu, Li Fu, Hamid Malekizade
Formato: article
Lenguaje:EN
Publicado: Taylor & Francis Group 2021
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Acceso en línea:https://doaj.org/article/53215166d30740c3a61f4657d6e3faa2
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spelling oai:doaj.org-article:53215166d30740c3a61f4657d6e3faa22021-11-04T15:00:41ZFinite-time active fuzzy sliding mode approach for deep surge control in nonlinear disturbed compressor system with uncertainty in charactrisitic curve0005-11441848-338010.1080/00051144.2021.1990629https://doaj.org/article/53215166d30740c3a61f4657d6e3faa22021-10-01T00:00:00Zhttp://dx.doi.org/10.1080/00051144.2021.1990629https://doaj.org/toc/0005-1144https://doaj.org/toc/1848-3380In this paper, a novel active control approach is designed for surge instability in the compressor system using the finite-time fuzzy sliding mode scheme. The primary novelty of this study lies in the development of a finite-time fuzzy sliding mode control for the surge instability in a compressor system in the presence of disturbance and uncertainty in the characteristic curve of the compressor and also throttle valve. To ensure the stability of the closed-loop system in Lyapunov's concept, a finite time active control method is proposed based on fuzzy estimation method and robust adaptive and sliding mode methods. Achieving finite time stability and rapid elimination of deep surge instability occurs through a fast sliding mode design, while fuzzy and adaptive techniques are used to estimate uncertainty and nonlinear terms, as well as to obtain optimal estimation weights. The simulation results in MATLAB environment and comparison show that the suggested method provides better quality control in terms of surge suppression, robustness, and overcoming uncertainty and disturbance effects.Xiuwei FuLi FuHamid MalekizadeTaylor & Francis Grouparticlecentrifugal compressordeep surgefinite-time active controlfast sliding modedisturbanceuncertaintynoiseControl engineering systems. Automatic machinery (General)TJ212-225AutomationT59.5ENAutomatika, Vol 62, Iss 3-4, Pp 530-540 (2021)
institution DOAJ
collection DOAJ
language EN
topic centrifugal compressor
deep surge
finite-time active control
fast sliding mode
disturbance
uncertainty
noise
Control engineering systems. Automatic machinery (General)
TJ212-225
Automation
T59.5
spellingShingle centrifugal compressor
deep surge
finite-time active control
fast sliding mode
disturbance
uncertainty
noise
Control engineering systems. Automatic machinery (General)
TJ212-225
Automation
T59.5
Xiuwei Fu
Li Fu
Hamid Malekizade
Finite-time active fuzzy sliding mode approach for deep surge control in nonlinear disturbed compressor system with uncertainty in charactrisitic curve
description In this paper, a novel active control approach is designed for surge instability in the compressor system using the finite-time fuzzy sliding mode scheme. The primary novelty of this study lies in the development of a finite-time fuzzy sliding mode control for the surge instability in a compressor system in the presence of disturbance and uncertainty in the characteristic curve of the compressor and also throttle valve. To ensure the stability of the closed-loop system in Lyapunov's concept, a finite time active control method is proposed based on fuzzy estimation method and robust adaptive and sliding mode methods. Achieving finite time stability and rapid elimination of deep surge instability occurs through a fast sliding mode design, while fuzzy and adaptive techniques are used to estimate uncertainty and nonlinear terms, as well as to obtain optimal estimation weights. The simulation results in MATLAB environment and comparison show that the suggested method provides better quality control in terms of surge suppression, robustness, and overcoming uncertainty and disturbance effects.
format article
author Xiuwei Fu
Li Fu
Hamid Malekizade
author_facet Xiuwei Fu
Li Fu
Hamid Malekizade
author_sort Xiuwei Fu
title Finite-time active fuzzy sliding mode approach for deep surge control in nonlinear disturbed compressor system with uncertainty in charactrisitic curve
title_short Finite-time active fuzzy sliding mode approach for deep surge control in nonlinear disturbed compressor system with uncertainty in charactrisitic curve
title_full Finite-time active fuzzy sliding mode approach for deep surge control in nonlinear disturbed compressor system with uncertainty in charactrisitic curve
title_fullStr Finite-time active fuzzy sliding mode approach for deep surge control in nonlinear disturbed compressor system with uncertainty in charactrisitic curve
title_full_unstemmed Finite-time active fuzzy sliding mode approach for deep surge control in nonlinear disturbed compressor system with uncertainty in charactrisitic curve
title_sort finite-time active fuzzy sliding mode approach for deep surge control in nonlinear disturbed compressor system with uncertainty in charactrisitic curve
publisher Taylor & Francis Group
publishDate 2021
url https://doaj.org/article/53215166d30740c3a61f4657d6e3faa2
work_keys_str_mv AT xiuweifu finitetimeactivefuzzyslidingmodeapproachfordeepsurgecontrolinnonlineardisturbedcompressorsystemwithuncertaintyincharactrisiticcurve
AT lifu finitetimeactivefuzzyslidingmodeapproachfordeepsurgecontrolinnonlineardisturbedcompressorsystemwithuncertaintyincharactrisiticcurve
AT hamidmalekizade finitetimeactivefuzzyslidingmodeapproachfordeepsurgecontrolinnonlineardisturbedcompressorsystemwithuncertaintyincharactrisiticcurve
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